Consider four capacitors connected to a 9.0-V battery in the configuration shown in the diagram. The capacitors have the following capacitances: C; is 7.4 µF, C2 is 6.4 µF, Cz is 12.4 µF and C4 is 4.1 µF. C1 C3 9.0V C2 C4 (a) Calculate the equivalent capacitance of the configuration shows in the diagram and the total energy stored by the equivalent capacitance. Be sure to explain your reasoning. (b) Find the potential difference across each capacitor and the charge stored on each capacitor. Be sure to explain your reasoning and show your work. Summarize your answers in a table like the one below in your hand-written ar Capacitance: Potential Difference: Charge C= AV= Qi= AV; Q= AV3= Q3=
Consider four capacitors connected to a 9.0-V battery in the configuration shown in the diagram. The capacitors have the following capacitances: C; is 7.4 µF, C2 is 6.4 µF, Cz is 12.4 µF and C4 is 4.1 µF. C1 C3 9.0V C2 C4 (a) Calculate the equivalent capacitance of the configuration shows in the diagram and the total energy stored by the equivalent capacitance. Be sure to explain your reasoning. (b) Find the potential difference across each capacitor and the charge stored on each capacitor. Be sure to explain your reasoning and show your work. Summarize your answers in a table like the one below in your hand-written ar Capacitance: Potential Difference: Charge C= AV= Qi= AV; Q= AV3= Q3=
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Transcribed Image Text:Consider four capacitors connected to a 9.0-V battery in the configuration shown in the diagram. The capacitors have the followving capacitances: Cq is 7.4 µF, C2 is 6.4 µF, C3 is 12.4 µF and C4 is 4.1 µF.
C1
C3
9.0V
C2
C4
(a) Calculate the equivalent capacitance of the configuration shows in the diagram and the total energy stored by the equivalent capacitance. Be sure to explain your reasoning.
(b) Find the potential difference across each capacitor and the charge stored on each capacitor. Be sure to explain your reasoning and show your work . Summarize your answers in a table like the one below in your hand-written answer:
Capacitance:
Potential Difference:
Charge
C;=
AV;=
Qı=
Cz=
AVz=
Q²=
C3=
AV3=
Q3=
C4=
AV==
Q«=
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